By utilizing business analytics, a company can learn which one of the following?

Group of answer choices

-Which products are moving slowly versus which products are moving quickly

-Which products have been sold in the past 3 months

-Who is likely to buy the product in a given period of time

-Where each product sits (warehouse, store, or factory location)

-The suppliers who contributed to the manufacturing of the product

Answers

Answer 1

A company can learn which one of the following that describe by utilizing business analytics is who is likely to buy the product by period of time.

Why company must learn to describe by utilizing business analytics?

Company must learn how to utilizing business analytics because this is the best choices to protect the path of the company. Businesses that employ business analytics benefit from increased productivity and efficiency, quicker and more accurate decision-making, better financial results, and the discovery and development of new product and service income. Through their regular actions, they increase operational effectiveness. aid companies in better understanding their clients.

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Related Questions

Select the command below that can be used to provide a long listing for each file in a directory: a. 1s - T b.1s -1 C. 1s -L d. 1s

Answers

The command that can be used to provide a long listing for each file in a directory is 1s command.

The ls command outputs whatever additional information you request with the flags together with the contents of each specified Directory or the name of each specified File. The ls command shows the contents of the current directory if you do not provide a File or Directory.

The ls command presents all information by default in alphabetical order by file name. With the exception of dot (.) and dot dot, the command utilizes the -A flag by default when run by a user with root authority. Use the ls -a command to display all file entries, even those that start with a dot (.).

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The present ethical codes of the engineering societies (ASCE, IEEE, etc) are deficient in that they do not apply to non-members of that particular society. True False

Answers

The present ethical codes of the engineering societies (ASCE, IEEE, etc) are deficient in that they do not apply to non-members of that particular society is False.

What are engineering ethics code principles?Be dependable and trustworthy in your behavior. be mindful of how their actions may influence others and show respect for the privacy, rights, and reputations of other groups and people. respect for privacy. conflict of interest disclosureThe NSPE Board of Ethical Review (BER) examines ethical situations that are brought to it by NSPE members, other engineers, government officials, and members of the public, whether they are genuine or hypothetical.Maintaining the highest standards of integrity, responsibility, and ethical conduct in one's professional actions... Treating everyone equally and with respect, abstaining from harassment and discrimination, and taking care not to cause harm to others.

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Oil of specific gravity 0.93 flows steadily through the system shown. The oil-water manometer shows a deflection of 6 cm. Calculate the exit velocity neglecting all losses through the system.
Answer: V_exit= 0.718 m/s

Answers

A steady flow of oil with a specific gravity of 0.93 is present. The exit velocity neglecting all losses through the system V=0.7179 m/s.

P1-P2/sg=h=-6*[ρm/ρoil-1]=-6[1/0.93-1]

h=-0.4516cm=-0.4516*10⁻²cm

V₂²-V₁²/2g=h=-0.4516*10⁻²

V₂-(A₂/A₁)².V²₂/2g=-0.4516*10⁻²

V₂²=0.0132=0.11486 m/s

A₂V₂=Aexit.Vexit

Vexit=A₂/Aexit*V₂

=π/4.5²/ π/4 2²*0.1148

Velocityexit=0.7179 m/s.

Exit losses are calculated as a coefficient multiplied by the change in velocity head from the downstream end of the culvert, just inside it, to the cross section immediately downstream of it. A pipe's head loss is also inversely correlated with its length. So it makes sense to keep the pipe work as straight and compact as possible. Friction loss must be taken into account during system design since it has an impact on the flow rate and fluid pressure inside the pipe system.

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